School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.
School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.
Sci Total Environ. 2023 Jul 10;881:163467. doi: 10.1016/j.scitotenv.2023.163467. Epub 2023 Apr 14.
Effluent from sewage treatment plant, as an important source of microplastics (MPs) in receiving water, has attracted extensive attention. Membrane separation process shows good microplastic removal performance in the existing tertiary water treatment process. Problematically, membrane fouling and insufficient removal of small organic molecules are still the key obstacles to its further extensive application. Dissolved organics, extracellular polymers and suspended particles in the influent are deposited on the membrane surface and internal structure, reducing the number and pore diameter of effective membrane aperture, and increasing the resistance of membrane filtration. Exploring the mechanism and approach of membrane fouling caused by micro/nanoplastics is the key to alleviate fouling and allow membranes to operate longer. In this paper, removal performance of micro/nanoplastics by current membrane filtration and the contribution to membrane fouling during water treatment are thoroughly reviewed. The coupling mechanisms between micro/nanoplastics and other pollutants and mechanism of membrane fouling caused by composite micro/nanoplastics are discussed. Additionally, on this basis, the prospect of combined process for micro/nanoplastic removal and membrane fouling prevention is also proposed and discussed, which provides a valuable reference for the preferential removal of micro/nanoplastics and development of antifouling membrane.
污水处理厂的出水作为受纳水体中微塑料(MPs)的重要来源,引起了广泛关注。膜分离工艺在现有的三级水处理工艺中表现出良好的去除微塑料性能。但存在的问题是,膜污染和小分子有机物去除不充分仍然是其进一步广泛应用的关键障碍。进水中的溶解有机物、胞外聚合物和悬浮颗粒沉积在膜表面和内部结构上,减少了有效膜孔径的数量和孔径,增加了膜过滤的阻力。探索微/纳米塑料引起的膜污染的机制和方法是减轻污染并使膜能够更长时间运行的关键。本文彻底综述了当前膜过滤对微/纳米塑料的去除性能及其在水处理过程中对膜污染的贡献。讨论了微/纳米塑料与其他污染物的耦合机制以及复合微/纳米塑料引起的膜污染机制。此外,在此基础上,还提出并讨论了微/纳米塑料去除和膜防污的联合工艺前景,为微/纳米塑料的优先去除和抗污染膜的开发提供了有价值的参考。